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  • |title=Ernster L (1962) Reaction pathways of succinate-linked acetoacetate reduction in tissue homogenates and isolat |keywords=Acetoacetate reduction, Succinate, Reaction pathways
    508 bytes (56 words) - 11:14, 28 May 2015
  • ...([[Fatty_acid_oxidation_pathway_control_state|F]], F(N), [[FN]], [[FNS]], pathways) can be evaluated by using this SUIT protocol.
    486 bytes (68 words) - 11:28, 31 July 2019
  • |pathways= {{#if: {{{pathways|}}} |'''Pathway:''' {{#arraymap:{{{pathways|}}}|,|x|[[Pathways::x]]}} }}
    2 KB (184 words) - 13:39, 24 April 2017
  • |title=Raimondi V, Ciccarese F, Ciminale V (2020) Oncogenic pathways and the electron transport chain: a dangeROS liaison. Br J Cancer 122:168-8 ...ew, we focus on the ETC as a source of ROS and its modulation by oncogenic pathways, which generates a vicious cycle that resets ROS levels to a higher homoeos
    2 KB (221 words) - 11:05, 22 March 2023
  • |title= Mitochondrial pathways to Complex II, glycerophosphate dehydrogenase and electron transferring fla |abstract= Gnaiger E Mitochondrial pathways to Complex II, glycerophosphate dehydrogenase and electron transferring fla
    676 bytes (81 words) - 12:36, 4 December 2019
  • ...tion count on NS-pathway control state: {{#ask:[[Category:Publications]] [[Pathways::NS]] |format=count}} {{#ask:[[Category:Publications]] [[Pathways::NS]]
    1 KB (137 words) - 13:03, 17 November 2020
  • File:Pressure-force Maxwell.png
    ::::* Gnaiger E (2020) Mitochondrial pathways and respiratory control. An introduction to OXPHOS analysis. 5th ed. https:
    (1,509 × 1,130 (521 KB)) - 11:35, 29 July 2022
  • File:Pressure-force van't Hoff.png
    ::::* Gnaiger E (2020) Mitochondrial pathways and respiratory control. An introduction to OXPHOS analysis. 5th ed. https:
    (1,565 × 1,162 (549 KB)) - 11:35, 29 July 2022
  • File:Pressure-force Einstein.png
    ::::* Gnaiger E (2020) Mitochondrial pathways and respiratory control. An introduction to OXPHOS analysis. 5th ed. https:
    (1,575 × 1,138 (568 KB)) - 11:35, 29 July 2022
  • File:Pressure-force Prigogine.png
    ::::* Gnaiger E (2020) Mitochondrial pathways and respiratory control. An introduction to OXPHOS analysis. 5th ed. https:
    (1,514 × 1,130 (644 KB)) - 11:35, 29 July 2022
  • File:Pressure-force Nernst.png
    ::::* Gnaiger E (2020) Mitochondrial pathways and respiratory control. An introduction to OXPHOS analysis. 5th ed. https:
    (1,546 × 1,150 (792 KB)) - 11:35, 29 July 2022
  • |title=Mitochondrial pathways to Complex I: Respiration with pyruvate, malate and glutamate. Mitochondr P |abstract=Gnaiger E (2011) Mitochondrial pathways to Complex I: Respiration with pyruvate, malate and glutamate. Mitochondr P
    739 bytes (89 words) - 12:42, 4 December 2019
  • File:Hydrogen ion versus proton.png
    Gnaiger E (2020) Mitochondrial pathways and respiratory control. An introduction to OXPHOS analysis. 5th ed. https:
    (4,415 × 2,311 (602 KB)) - 09:50, 10 November 2022
  • ...ction, endo- and paracrine modulation and inflammation. Here we review the pathways encompassing succinate as a metabolite or a signal and how these may intera |pathways=N, S, NS
    1 KB (147 words) - 11:24, 25 March 2023
  • {{#ask:[[Category:Abstracts]] [[Pathways::CIV]] |?Pathways=Pathway
    869 bytes (115 words) - 11:11, 12 January 2019
  • ...monstrate a cross-talk between two different mitochondrial quality control pathways. |pathways=ROX
    2 KB (230 words) - 16:56, 9 November 2017
  • ...[[Fatty_acid_oxidation_pathway_control_state|F]], F(N), [[FN]] and [[FNS]] pathways) and in ET state ([[FNS]] and [[S]]) can be evaluated by using this SUIT pr
    669 bytes (94 words) - 13:07, 12 April 2023
  • {{#ask:[[Category:Abstracts]] [[Pathways::NS]] |?Pathways=Pathway
    870 bytes (114 words) - 11:04, 12 January 2019
  • {{#ask:[[Category:Abstracts]] [[Pathways::N]] |?Pathways=Pathway
    868 bytes (114 words) - 10:57, 12 January 2019
  • {{#ask:[[Category:Abstracts]] [[Pathways::S]] |?Pathways=Pathway
    875 bytes (115 words) - 10:41, 12 January 2019
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